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稀土对刺槐苗木生理特性影响的研究 总被引:9,自引:1,他引:9
稀土对刺槐苗木生理特性影响的研究赵兰勇,梁玉堂(山东农业大学林学院泰安271018)王九龄(北京林业大学北京100083)关键词稀土,刺槐,光合速率,叶绿素含量,水分利用效率,矿质元素含量近年来,稀土元素在农业上的应用研究越来越受到人们的重视,并且已... 相似文献
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The introduction of new hybrids and integrated crop-soil management has been causing maize grain yield to increase. However, less attention has been paid on the nutrient concentration of the grain; this aspect is of great importance to supplying calories and nutrients in the diets of both humans and animals worldwide. Increasing the retranslocation of nutrients from vegetative organs to grain can effectively increase the nutrient concentration of grain and general nutrient use efficiency. The present study involved monitoring the dynamic change of macro- and micronutrients in different organs of maize during the grain filling stage. In addition, the mobility of different elements and their contribution to grain nutrient content were evaluated in a 2-year experiment under low (LN, no N supplied) and high N (HN, 180 kg N ha−1) supply. Under HN supply, the net remobilization efficiency (RE) of the vegetative organs as a whole (calculated as nutrient remobilization amount divided by nutrient content at silking) of N, P, K, Mn, and Zn were 44%, 60%, 13%, 15%, and 25%, respectively. The other nutrients (Mg, Ca, Fe, Cu, and B) showed a net accumulation in the vegetative organs as a whole during the grain filling stage. Among the different organs, N, P, and Zn were remobilized more from the leaves (RE of 44%, 51% and 43%, respectively) and the stalks (including leaf sheaths and tassels) (RE of 48%, 71% and 43%, respectively). K was mainly remobilized from the leaves with RE of 51%. Mg, Ca, Fe, Mn, and Cu were mostly remobilized from the stalks with the RE of 23%, 9%, 10%, 42%, and 28%, respectively. However, most of the remobilized Mg, Ca, Fe, Mn, Cu, and Zn were translocated to the husk and cob, which seemingly served as the buffer sink for these nutrients. The REs of all the nutrients except for P, K, and Zn were vulnerable to variations in conditions annually and were reduced when the grain yield and harvest index were lower in 2014 compared with 2013. Under LN stress, the RE was reduced in P and Zn in 2013, increased in Cu and unchanged in other nutrients. The concentration of these nutrients in the grain was either unchanged (P, K, Ca, Zn, and B) or decreased (N, Mg, Fe, Mn, and Cu). It is concluded that grain N, P, K, Mn, and Zn, but not Mg, Ca, Fe, Cu, and B concentration, can be improved by increasing their remobilization from vegetative organs. However, enhancing the senescence of maize plant via LN stress seems unable to increase grain mineral nutrient concentration. Genetic improvement aiming to increase nutrient remobilization should take into account the organ-specific remobilization pattern of the target nutrient. 相似文献
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何首乌茎尖嫩叶主要营养成分分析及评价 总被引:1,自引:0,他引:1
测定了何首乌茎尖嫩叶的VB2、VC、粗纤维等主要营养成分含量和K、Fe、Zn等矿质元素含量,以期为何首乌茎尖嫰叶的合理开发利用提供理论依据。结果表明,何首乌茎尖嫩叶营养丰富,各种营养成分较为全面,其主要营养成分和矿质元素含量也远远高于其他4种常见蔬菜,这为何首乌茎尖嫩叶的食用价值提供了科学依据,也为改善人们的膳食营养和餐饮文化、开发蔬菜资源及提高其利用价值提供了参考。 相似文献
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Hugh Riley 《Acta Agriculturae Scandinavica, Section B - Plant Soil Science》2013,63(3):122-134
Trials were performed with early and semi-early potatoes to test the effects of nitrogen (N) fertilizer level (0-160 kg N ha-1) and timing (all at planting versus half then and half either soon after emergence or 3 weeks later). All seven trials with earlies were irrigated as required, whilst different irrigation regimes (moderate versus intensive) were compared in two trials with semi-earlies. No benefit was derived from splitting the N application. Haulm growth and N uptake increased in all cases almost linearly up to the highest N level, but tuber yield did not respond in the same way. The optimum N level was 80 kg N ha-1 for a yield of 15 Mg ha-1, rising to 120 kg N ha-1 for a yield of 40 Mg ha-1. Tuber quality was lowered by the use of excess N fertilizer, particularly in the case of earlies. The quantity of mineralised N present in the soil after harvest rose sharply with above optimum fertilizer use, and the amount of N present in crop residues also increased. The likely leaching after early potatoes was estimated to be up to 80 kg N ha-1. The proportion of fertilizer N which was not accounted for in either tuber yield, crop residues or mineral N in soil was 26% in earlies and 38% in semi-earlies. 相似文献
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本试验对三江源区不同高寒草地植物中6种矿物元素(钾K,钙Ca,钠Na,镁Mg,锌Zn,铁Fe)的含量进行了测定和分析,结果表明:植物中K元素含量为7.314~12.803 g·kg-1之间,Ca元素含量为2.851~6.823 g·kg-1之间,Na元素含量为64.404~185.553 mg·kg-1之间,Mg元素含量为1.272~2.655 g·kg-1之间,Zn元素含量为14.718~51.387 mg·kg-1之间,Fe元素含量为161.056~531.677 mg·kg-1之间;豆科(Leguminosae)植物和杂类草(Forbs)矿物元素含量显著高于禾本科(Gramineae)和莎草科(Cyperaceae)植物;植物中K元素与Mg元素、Ca元素与Na元素、Ca元素与Zn元素、Na元素与Zn元素含量之间呈极显著正相关关系(P<0.01),Ca元素与Fe元素、Mg元素与Fe元素之间呈显著正相关关系(P<0.05);根据美国国家研究理事会(National research council,NRC)绵羊日粮矿物元素需求标准,三江源区各草地植物中Na,Zn元素相对缺乏,其它4种元素均能满足放牧藏羊的矿物营养需求。 相似文献
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通过对天津周边海域表层水体的一些理化要素进行调查,得到化学需氧量(CODMn)、活性磷酸盐(PO34--P)、氨氮(NH4+-N)、亚硝酸盐氮(NO2--N)及硝酸盐氮(NO3--N)含量从离岸近的海域向外海方向递减。水温、pH值、盐度的变化趋势则正好相反;在此次调查期间,天津周边海域海水中无机氮的主要存在形式为NO3--N和NO2--N;相关性分析表明,盐度与化学需氧量、活性磷酸盐、无机氮、亚硝酸盐氮在p=0.01水平上均呈极显著负相关;活性磷酸盐与无机氮、NO2--N和NH4+-N含量均在p=0.01水平上呈极显著正相关;由N/P比和E值的平面分布图可以得到,沿岸N/P比最低,离岸越远的地方N/P比越高。E值的平面分布恰恰相反。北塘附近海域依然是富营养化最严重的区域;本调查海域主要是磷限制,无机氮仍然是此海域的首要污染因子,其次是化学需氧量。 相似文献